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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Asymmetric wear behavior of self-mated copper fiber brush and slip-ring sliding electrical contacts in a humid carbon dioxide environment
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Asymmetric wear behavior of self-mated copper fiber brush and slip-ring sliding electrical contacts in a humid carbon dioxide environment

机译:自匹配铜纤维电刷和滑环滑动电触点在潮湿二氧化碳环境中的不对称磨损行为

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摘要

This study examines wear phenomenon occurring in high-current density self-mated metal copper sliding contacts in humid carbon dioxide environments. A custom tribometer built to test macroscopic (lightly loaded) brush and slip-ring sliding electrical contacts at relatively high speed and current density is described in the text. Data is presented as further evidence that at some elevated current density (between 120 and 180 A/cm~2) there is a transition in the wear mechanism as the brush wear rates, friction coefficients, and contact resistances bifurcate. In situ white light interferometry provides new insight on the evolution of slip-ring surfaces as a function of current flow direction through the contact. Ex situ SEM of the brush fiber bundle surfaces shows a strong dissimilitude in the wear of contacting fibers as a result of the current flow direction. Steady-state friction coefficients in the range of 0.20-0.25, linear wear rates of 3-5 × 10~(-11) m/m, and contact resistances of 0.6 mΩ are reported for copper fiber brushes in water saturated carbon dioxide environments at 2.5 m/s sliding speed and up to 120 A/cm~2. A bifurcation occurs at 180 A/cm~2 where the electron receiving brush (positive bias) exhibits an increase in friction coefficient to a range of 0.3-0.4, and the electron donating brush (negative bias) a drop to 0.18. The positive brush also exhibits an increase in wear rate to 2.3 × 10~(-10) m/m and a sharp decrease in contact resistance to 0.2 mΩ. The negative brush shows an increase in wear rate but only to half the value of the positive brush, and the negative brush contact resistance increased sharply to 0.6-0.8 mΩ An uncertainty analysis of wear rate is presented that demonstrates the need for long (100s of km) sliding distances to achieve a reasonable measurement uncertainty for such low wear contacts.
机译:这项研究研究了在潮湿的二氧化碳环境中在高电流密度自配合金属铜滑动触点中发生的磨损现象。文中介绍了一种定制的摩擦计,用于以相对较高的速度和电流密度测试宏观(轻载)电刷和滑环滑动电触点。数据被提供作为进一步的证据,即在某些较高的电流密度(介于120和180 A / cm〜2之间)下,随着电刷的磨损率,摩擦系数和接触电阻分叉,磨损机理会发生转变。原位白光干涉测量法提供了关于滑环表面随着电流流过接触方向而变化的新见解。毛刷纤维束表面的异位扫描电镜显示,由于电流的流动方向,接触纤维的磨损严重不同。据报道,在水饱和的二氧化碳环境下,铜纤维电刷的稳态摩擦系数为0.20-0.25,线性磨损率为3-5×10〜(-11)m / m,接触电阻为0.6mΩ。滑动速度2.5 m / s,最高120 A / cm〜2。分叉发生在180 A / cm〜2处,其中电子接收电刷(正偏压)的摩擦系数增加到0.3-0.4的范围,而电子给电电刷(负偏压)的摩擦系数下降到0.18。正极刷的磨损率也提高到2.3×10〜(-10)m / m,接触电阻急剧下降到0.2mΩ。负极电刷的磨损率增加,但仅为正极电刷的一半,并且负极电刷的接触电阻急剧增加至0.6-0.8mΩ。提出了对磨损率的不确定性分析,表明需要较长的时间(100s km)的滑动距离,以实现针对此类低磨损触点的合理测量不确定性。

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